SLACS SDSS J2321-0939 , the SIMBAD biblio

SLACS SDSS J2321-0939 , the SIMBAD biblio (20 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST09:15:22


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Title First 3 Authors
2008ApJ...682..964B viz 15       D               1 394 360 The Sloan lens ACS survey. V. The full ACS strong-lens sample. BOLTON A.S., BURLES S., KOOPMANS L.V.E., et al.
2009A&A...501..461G viz 15       D               1 171 52 Photometric mass and mass decomposition in early-type lens galaxies. GRILLO C., GOBAT R., LOMBARDI M., et al.
2009MNRAS.399...21B 624       D     X C F     15 14 85 Two-dimensional kinematics of SLACS lenses - II. Combined lensing and dynamics analysis of early-type galaxies at z = 0.08-0.33. BARNABE M., CZOSKE O., KOOPMANS L.V.E., et al.
2009ApJ...705.1099A viz 15       D               1 263 241 The Sloan lens ACS survey. IX. Colors, lensing, and stellar masses of early-type galaxies. AUGER M.W., TREU T., BOLTON A.S., et al.
2010ApJ...709.1195T 18       D               1 56 336 The initial mass function of early-type galaxies. TREU T., AUGER M.W., KOOPMANS L.V.E., et al.
2010MNRAS.406.1055B 15       D               1 58 43 Cosmic equation of state from strong gravitational lensing systems. BIESIADA M., PIORKOWSKA A. and MALEC B.
2011RAA....11..641B 23 23 Dark energy constraints from joint analysis of standard rulers and standard candles. BIESIADA M., MALEC B. and PIORKOWSKA A.
2011MNRAS.416.1822C 15       D               1 59 34 Secondary infall model and dark matter scaling relations in intermediate-redshift early-type galaxies. CARDONE V.F., DEL POPOLO A., TORTORA C., et al.
2012MNRAS.419..656C 286       D     X   F     7 46 8 Two-dimensional kinematics of SLACS lenses – IV. The complete VLT–VIMOS data set. CZOSKE O., BARNABE M., KOOPMANS L.V.E., et al.
2012ApJ...755...31C viz 15       D               1 313 26 Testing the dark energy with gravitational lensing statistics. CAO S., COVONE G. and ZHU Z.-H.
2013ApJ...777....1B 16       D               2 65 6 Witnessing the differential evolution of disk galaxies in luminosity and size via gravitational lensing. BANDARA K., CRAMPTON D., PENG C., et al.
2014MNRAS.439.1781S 16       D               1 64 10 A dearth of dark matter in strong gravitational lenses. SANDERS R.H.
2014MNRAS.439.2494O 16       D               1 162 95 The stellar and dark matter distributions in elliptical galaxies from the ensemble of strong gravitational lenses. OGURI M., RUSU C.E. and FALCO E.E.
2017MNRAS.472..765T 16       D               1 57 2 Mass discrepancy-acceleration relation in Einstein rings. TIAN Y. and KO C.-M.
2018MNRAS.475.2403L 99       D         F     2 15 8 Mass density slope of elliptical galaxies from strong lensing and resolved stellar kinematics. LYSKOVA N., CHURAZOV E. and NAAB T.
2018ApJ...864...91S viz 16       D               1 132 5 Prediction of supernova rates in known galaxy-galaxy strong-lens systems. SHU Y., BOLTON A.S., MAO S., et al.
2019MNRAS.488.3745C viz 17       D               1 161 ~ Assessing the effect of lens mass model in cosmological application with updated galaxy-scale strong gravitational lensing sample. CHEN Y., LI R., SHU Y., et al.
2020MNRAS.498.6013A viz 17       D               1 197 ~ Testing dark energy models with a new sample of strong-lensing systems. AMANTE M.H., MAGANA J., MOTTA V., et al.
2020A&A...643A.165B 22       D               1 40 233 TDCOSMO. IV. Hierarchical time-delay cosmography - joint inference of the Hubble constant and galaxy density profiles. BIRRER S., SHAJIB A.J., GALAN A., et al.
2021MNRAS.503.2380S 18       D               1 50 57 Dark matter haloes of massive elliptical galaxies at z ∼ 0.2 are well described by the Navarro-Frenk-White profile. SHAJIB A.J., TREU T., BIRRER S., et al.

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